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EV Charging Cost Calculator

Cost and time to charge an electric car from any charge level, with range added, cost per mile or km, and a comparison with petrol.

Distance in (optional)

Usable capacity.

About 90% at home; energy lost as heat.

Miles per kWh, or kWh per 100 km.

Optional. 7 kW is a typical home wallbox.

Optional.

Optional. Per gallon, or per litre for km.

About the EV Charging Cost Calculator

One of the biggest attractions of an electric car is how little it costs to run, but working out exactly how little is harder than with a petrol car. There is no price per gallon on a sign; instead there is a battery measured in kilowatt-hours, a charge level shown as a percentage, an electricity tariff, and some energy lost along the way as heat. Charging at home overnight, at work, at a supermarket or at a motorway rapid charger can cost very different amounts for the same miles.

This EV charging cost calculator brings it together. Enter the battery capacity, the charge level now and the level you want to charge to, the electricity price, the charging efficiency and your car's efficiency in miles per kWh or kWh per 100 km. It gives the cost of the charge, the energy drawn from the grid, the range added, the cost per 100 miles or km, the charging time at your charger's power, and a comparison with a petrol car covering the same distance.

How to Use the EV Charging Cost Calculator

Choose whether to work in miles or kilometres.

Enter the usable battery capacity in kWh. It is in the car's specifications, and is usually a little less than the headline figure.

Enter the charge level now and the level to charge to.

Enter your electricity price per kWh and the charging efficiency — about 90 percent for a home charger.

Enter the car's efficiency: miles per kWh, or kWh per 100 km. The car's trip computer shows it.

Optionally, enter the charger power in kW, and a petrol car's fuel economy and fuel price to compare.

How the Charging Cost Is Worked Out

  energy into battery  =  capacity × (charge to − charge now)
  energy from grid     =  energy into battery ÷ efficiency
  cost                 =  energy from grid × price per kWh
  range added          =  energy into battery × miles per kWh
                          (or ÷ kWh per 100 km × 100)
  charging time        =  energy from grid ÷ charger power

Step-by-Step Example

A 75 kWh battery from 20% to 80%, electricity at 0.15 per kWh, 90% efficiency, 3.5 miles per kWh, a 7 kW home charger.

  Into battery:   75 × (80% − 20%)          =  45 kWh
  From grid:      45 ÷ 90%                  =  50 kWh
  Cost:           50 × 0.15                 =  7.50
  Range:          45 × 3.5                  =  about 158 miles
  Per 100 miles:  7.50 ÷ 157.5 × 100        =  4.76
  Time:           50 ÷ 7                    =  about 7 h 9 min
  Petrol:         157.5 ÷ 30 mpg × 3.50     =  18.38, so 10.88 more

Where You Charge Matters Most

Home charging is usually the cheapest, especially on an off-peak or EV tariff that offers low prices overnight. Many drivers do almost all their charging this way, plugging in at night like a phone.

Workplace and destination charging is sometimes free or low-cost, and is a useful top-up during the day.

Public rapid chargers are fast but often charge several times the home price per kWh. For long journeys they are essential, but a car charged mostly at rapid chargers may cost nearly as much per mile as an efficient petrol car. Try the calculator with your local rapid charger price to see the difference.

Charging Efficiency and Losses

Not all the electricity you pay for reaches the battery. Some is lost as heat in the charger, the car's onboard converter and the battery itself, and some runs the car's systems, such as battery heating, while it charges. Losses are typically around 10 percent on a home wallbox, and can be higher on a slow three-pin plug or in cold weather. DC rapid chargers skip the car's onboard converter but still lose some energy, usually billed on the energy delivered.

Charging Speed

Charging time depends on the charger's power, the car's maximum charging rate and the battery's state of charge. A standard home socket delivers about 2.3 kW, a home wallbox 7 kW, and public chargers from 7 kW up to 150 kW or more. Charging is fastest when the battery is low and slows down sharply above about 80 percent to protect the cells, which is why rapid chargers are usually quoted "to 80%". The calculator divides energy by power, so treat it as a best case for the part of the charge above 80 percent.

Real-World Efficiency

An electric car's efficiency varies more with conditions than a petrol car's. Motorway speeds, cold weather and heating the cabin can cut efficiency by 20 to 30 percent in winter, while gentle town driving in mild weather can beat the official figure. Regenerative braking recovers energy in stop-start traffic. Use the figure your car's trip computer shows over the last few weeks for the most accurate estimate.

Understanding Your Result

Charging cost is the cost of this charge.

Energy shows the energy stored in the battery and drawn from the grid.

Range added estimates the extra range from this charge.

Cost per distance gives the cost per 100 miles or 100 km.

Charging time estimates how long the charge takes at your charger's power.

Compared with petrol shows what the same distance would cost in fuel.

Worth knowing explains why most drivers charge to about 80 percent.

When Should You Use This Calculator?

Deciding whether an EV would save you money.

Comparing tariffs, home charging and public chargers.

Planning a long trip with rapid charging stops.

Working out business mileage costs for an electric car.

Checking an electricity bill after installing a wallbox.

Common Mistakes

Using the gross battery size instead of the usable capacity.

Forgetting charging losses.

Assuming full speed all the way to 100 percent.

Using a summer efficiency figure for winter driving.

Comparing with petrol using rapid charger prices only.

Frequently Asked Questions

How much does it cost to charge an electric car?

Multiply the energy the battery needs by the electricity price, allowing for charging losses. Charging a 75 kWh battery from 20 to 80 percent adds 45 kWh, takes about 50 kWh from the grid and costs 7.50 at 0.15 per kWh.

How much does an EV cost per mile?

Divide the charging cost by the miles added. The 7.50 charge above adds about 158 miles for a car doing 3.5 miles per kWh, which is about 4.76 per 100 miles, under 5 cents a mile.

Is charging an EV cheaper than petrol?

Usually, especially at home. The same 158 miles in a 30 mpg petrol car at 3.50 a gallon needs 5.25 gallons costing 18.38, about 10.88 more than the electric car. Rapid public chargers narrow the gap.

How long does it take to charge an EV?

Divide the energy from the grid by the charger power. About 50 kWh on a 7 kW home charger takes roughly 7 hours 9 minutes. A 50 kW rapid charger does it in about an hour, though charging slows above 80 percent.

Why does the meter show more than the battery gains?

Some energy is lost as heat in the charger, cables and battery, and some powers the car's systems while it charges. On a home charger about 10 percent is typical, so 45 kWh into the battery takes 50 kWh from the grid.

Should I charge my EV to 100 percent?

For everyday driving most manufacturers suggest about 80 percent, which is gentler on the battery and faster to reach. Charge to 100 percent before a long trip, and set off soon after it finishes.

Last reviewed September 28, 2026 by the CalculatorPeak editorial team.